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使用聚赖氨酸修饰的氧化铁纳米粒子进行癌症干细胞标记。

Cancer stem cell labeling using poly(L-lysine)-modified iron oxide nanoparticles.

机构信息

College of Veterinary Medicine, Northwest A&F University, Yangling, Shaanxi 712100, PR China.

出版信息

Biomaterials. 2012 May;33(14):3719-32. doi: 10.1016/j.biomaterials.2012.01.058. Epub 2012 Feb 18.

Abstract

Cell labeling using magnetic nanoparticles is an increasingly used approach in noninvasive behavior tracking, in vitro separation of cancer stem cells (CSCs), and CSC-based research in cancer therapy. However, the impact of magnetic labeling on the biological properties of targeted CSCs, such as self-renewal, proliferation, multi-differentiation, cell cycle, and apoptosis, remains elusive. The present study sought to explore the potential effects on biological behavior when CSCs are labeled with superparamagnetic iron oxide (SPIO) nanoparticles in vitro. The glioblastoma CSCs derived from U251 glioblastoma multiforme were labeled with poly(L-lysine) (PLL)-modified γ-Fe(2)O(3) nanoparticles. The iron uptake of glioblastoma CSCs was confirmed through prussian blue staining, and was further quantified using atomic absorption spectrometry. The cellular viability of the SPIO-labeled glioblastoma CSCs was assessed using a fluorescein diacetate and propidium iodide double-staining protocol. The expressed specific markers and multi-differentiation of SPIO-labeled glioblastoma CSCs were comparatively assessed by immunocytochemistry and semi-quantitative RT-PCR. The effects of magnetic labeling on cell cycle and apoptosis rate of glioblastoma CSCs and their differentiated progenies were assayed using a flow cytometer. The results demonstrated that the cell viability and proliferation capacity of glioblastoma CSCs and their differentiated progenies were not affected by SPIO labeling compared with their unlabeled counterparts. Moreover, the magnetically labeled CSCs displayed an intact multi-differentiation potential, and could be sub-cultured to form new tumor spheres, which indicates the CSCs capacity for self-renewal. In addition, cell cycle distribution, apoptosis rate of the magnetically labeled glioblastoma CSCs, and their differentiated progenies were not impaired. Therefore, the SPIO-labeled CSCs could be a feasible approach in conducting further functional analysis of targeted CSCs.

摘要

细胞标记使用磁性纳米粒子是一种越来越多地用于非侵入性行为跟踪,体外分离癌症干细胞(CSCs),和 CSC 为基础的癌症治疗研究。然而,磁性标记对靶向 CSCs 的生物学特性,如自我更新、增殖、多分化、细胞周期和凋亡的影响仍不清楚。本研究旨在探讨体外使用超顺磁性氧化铁(SPIO)纳米粒子标记 CSCs 时对其生物学行为的潜在影响。从 U251 胶质母细胞瘤多形性衍生的神经胶质瘤 CSCs 用聚(L-赖氨酸)(PLL)修饰的 γ-Fe(2)O(3)纳米粒子标记。通过普鲁士蓝染色证实神经胶质瘤 CSCs 的铁摄取,并进一步用原子吸收光谱法定量。用荧光二乙酸酯和碘化丙啶双重染色方案评估 SPIO 标记的神经胶质瘤 CSCs 的细胞活力。通过免疫细胞化学和半定量 RT-PCR 比较评估 SPIO 标记的神经胶质瘤 CSCs 的表达特异性标记物和多分化。用流式细胞仪测定磁性标记对神经胶质瘤 CSCs 及其分化后代的细胞周期和凋亡率的影响。结果表明,与未标记的神经胶质瘤 CSCs 及其分化后代相比,SPIO 标记对神经胶质瘤 CSCs 及其分化后代的细胞活力和增殖能力没有影响。此外,磁性标记的 CSCs 显示出完整的多分化潜能,并可传代形成新的肿瘤球体,这表明 CSCs 的自我更新能力。此外,磁性标记的神经胶质瘤 CSCs 及其分化后代的细胞周期分布和凋亡率没有受损。因此,SPIO 标记的 CSCs 可能是一种可行的方法,用于进一步进行靶向 CSCs 的功能分析。

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